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Linkages Between Measurements of Multifunctional and Polar Organics in Chamber Studies and the Ambient Environment

机译:室内研究中的多功能和极地有机物测量与环境环境之间的联系

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This work develops and applies methods to measure oxygenated organics inaerosols and fine particulate matter: Such methods are needed to gain further insight into chemical processes affecting the generation and fate of oxidation products of hydrocarbon emissions, and source apportionment of fine particulate matter. We establish the power of methods that rely on employment of O-(2,3,4,5,6-pentalfuor obenzyl)-hydroxylamine (PFBHA) and bis (trimethylsilyl) triflouroeacetamide (BSTFA) to derivatize carbonyls andmultifunctional carbonyls, and measurement of the derivatives by using gas chromatography/ion trap mass spectrometry (GC/ITMS). By using this approach, we report for the first time in the ambient atmospheric environment, the presence of hydroxyl acetone, 3-hydroxy-butanone, and 2-hydroxy-2-methylpropanal, and novel high molecular weight (>C10) oxygenated organics in PM2.5 that may be tracers of diesel-particulate matter. We also establish the utility of using a mist chamber to sample water-soluble organic, with Henry's law constants greater than 10-3. We applied the method to measurements of pptv levels of isoprene and 2-methyl-3-buten-2-ol (MBO) photooxidation products in the Blodgett Forest, CA, using sampling times of 10 minutes to support the results ofchamber studies.

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